Distributed Three-Stage Concatenated Irregular Convolutional, Unity-Rate and Space-Time Trellis Coding for Single-Antenna Aided Cooperative Communications

H. Nguyen, S. Ng, L. Hanzo
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引用次数: 4

Abstract

In this contribution, we propose a Distributed Concatenated Irregular Convolutional Coded Unity Rate Coded and Space Time Trellis Coded (DC-IrCC-URC-STTC) scheme for cooperative communications employing multiple single-antenna relays. Each coding arrangement is designed for efficient decoding convergence by employing non-binary Extrinsic Information Transfer (EXIT) charts. The source node transmits two-stage IrCC-URC encoded symbols to two relays during the first transmission period. Then each relay performs two-stage URC-IrCC decoding and re-encodes the information bits using the three-stage concatenated coding scheme IrCC-URC-STTC. However, only the signals of one predefined STTC output are transmitted from each relay to the destination node during the second transmission period. At the destination, the received signals are treated as if they arrived from one transmitter employing STTC using two co-located transmit antennas. The simulation results show that the Monte-Carlo based performance of the DC-IrCC-URC-STTC scheme exactly matches the EXIT-chart analysis. It also performs closely to its idealised counterpart that assumes perfect decoding at the relays when an EXIT-chart based optimal algorithm is applied for selecting relays.
单天线辅助协同通信的分布式三级串联不规则卷积、单位率和空时格编码
在这篇文章中,我们提出了一种分布式串联不规则卷积编码统一速率编码和时空网格编码(DC-IrCC-URC-STTC)方案,用于采用多个单天线中继的协作通信。通过采用非二进制外部信息传递(EXIT)图,每个编码安排都设计为有效的解码收敛。在第一个传输周期中,源节点向两个中继发送两个阶段的IrCC-URC编码符号。然后,每个中继执行两阶段的URC-IrCC解码,并使用三级串联编码方案IrCC-URC-STTC对信息位进行重新编码。然而,在第二个传输周期中,每个中继只将一个预定义STTC输出的信号传输到目的节点。在目的地,接收到的信号被视为来自使用STTC的一个发射机,使用两个位于同一位置的发射天线。仿真结果表明,基于蒙特卡罗的DC-IrCC-URC-STTC方案的性能完全符合出口图分析。当采用基于出口图的最优算法选择继电器时,它的性能也接近于其理想的对等体,即假设继电器具有完美的解码。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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